Chemistry, Thermodynamics, and Reaction Kinetics for Environmental Engineers

Author:   Jeff Kuo
Publisher:   Taylor & Francis Ltd
ISBN:  

9781032820422


Pages:   328
Publication Date:   22 June 2026
Format:   Paperback
Availability:   Not yet available   Availability explained
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Chemistry, Thermodynamics, and Reaction Kinetics for Environmental Engineers


Overview

This book aims to be the preeminent university chemistry textbook for environmental engineers. It provides undergraduate and graduate environmental engineering students with basic concepts and practical knowledge about chemistry that they would need in their professional careers. It focuses on the fundamental concepts of chemistry and its practical applications (e.g., understanding fate and transport of chemicals/pollutants in the environmental as well as the chemical/physicochemical processes applied in environmental engineering industry). This book also serves as a valuable resource for entry-level professionals to solidify their fundamental knowledge in environmental engineering chemistry. This book Presents the fundamentals of chemistry with focus on the needs of environmental engineers. Explains how an understanding of chemistry allows readers a better understanding of the fate and transport of chemicals in the environment as well as various treatment processes. Examines the fundamentals of chemical reaction equilibrium from learning the basics of thermodynamics. Presents the basic types and designs of reactors as well as reaction kinetics.

Full Product Details

Author:   Jeff Kuo
Publisher:   Taylor & Francis Ltd
Imprint:   CRC Press
Weight:   0.640kg
ISBN:  

9781032820422


ISBN 10:   103282042
Pages:   328
Publication Date:   22 June 2026
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Paperback
Publisher's Status:   Forthcoming
Availability:   Not yet available   Availability explained
This item is yet to be released. You can pre-order this item and we will dispatch it to you upon its release.

Table of Contents

1. Basic Concepts Related to General Chemistry. 2. Organic Chemistry for Environmental Engineers. 3. Inorganic Chemistry for Environmental Engineers. 4. Fundamentals of Chemical Thermodynamics. 5. Chemical Reaction Equilibria. 6. Solutes, Solvents, and Solutions. 7. Ionic Aquatic Solutions. 8. Acid-Base Equilibria in Aqueous Solutions. 9. Oxidation-Reduction Reactions in Aqueous Solutions. 10. Fundamentals of Chemical Reaction Kinetics. 11. Types and Design of Chemical Reactors. 12. Water Quality Parameters. 13. Chemistry in Soils. 14. Chemistry in the Atmosphere.

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Author Information

Dr. Jeff (Jih-Fen) Kuo had worked in environmental engineering industry for 10 years before joining Department of Civil and Environmental Engineering at California State University, Fullerton (CSUF) in 1995. He gained his industrial experience from working at Groundwater Technology Inc.; Dames and Moore; James M. Montgomery Consulting Engineers, and the Sanitation Districts of Los Angeles County (LACSD). His industrial experience includes design and installation of air strippers, activated carbon adsorbers, soil vapor extraction systems, bioremediation systems, and flare/catalytic incinerators. He is also experienced in site assessment; fate and transport analysis of toxic compounds in the environment; RI/FS work for landfills and superfund sites; design of flanged connections to meet stringent fugitive emission requirements; and development of emission factors for VOC emissions from wastewater treatment. He also participated in application research on various wastewater treatment projects when working at LACSD. Areas of research in environmental engineering include dechlorination of halogenated aromatics by ultrasound, fines/bacteria migration through porous media, biodegradability of heavy hydrocarbons, surface properties of composite mineral oxides, kinetics of activated carbon adsorption, wastewater filtration, THM formation potential of ion exchange resins, UV disinfection, sequential chlorination, nitrification/denitrification, removal of target compounds using nanoparticles, persulfate oxidation of persistent chemicals, microwave oxidation for wastewater treatment, destruction and removal of PFOAs, landfill gas recovery and utilization, greenhouse gases control technologies, fugitive methane emissions from gas industry, and stormwater runoff treatment. He received a B.S. in Chemical Engineering from National Taiwan University, an M.S. in Chemical Engineering from University of Wyoming, an M.S. in Petroleum Engineering, and an M.S. and a Ph.D. in Environmental Engineering from University of Southern California. He is a professional civil, mechanical, and chemical engineer registered in California.

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